Molecular recognition of pre-tRNA by Arabidopsis protein-only Ribonuclease P

被引:16
作者
Klemm, Bradley P. [1 ]
Karasik, Agnes [2 ]
Kaitany, Kipchumba J. [1 ]
Shanmuganathan, Aranganathan [2 ]
Henley, Matthew J. [3 ]
Thelen, Adam Z. [1 ]
Dewar, Allison J. L. [4 ]
Jackson, Nathaniel D. [2 ]
Koutmos, Markos [2 ]
Fierke, Carol A. [1 ,3 ,4 ]
机构
[1] Univ Michigan, Dept Biol Chem, Ann Arbor, MI 48109 USA
[2] Uniformed Serv Univ Hlth Sci, Dept Biochem & Mol Biol, Bethesda, MD 20814 USA
[3] Univ Michigan, Program Chem Biol, Ann Arbor, MI 48109 USA
[4] Univ Michigan, Dept Chem, Ann Arbor, MI 48109 USA
基金
美国国家卫生研究院;
关键词
RNase P; PRORP; PPR; pre-tRNA; molecular recognition; SUBSTRATE RECOGNITION; CATALYTIC STRATEGIES; STRUCTURAL BASIS; LAC REPRESSOR; 5' LEADER; BINDING; HOLOENZYME; COMPONENT; CLEAVAGE; SUBUNIT;
D O I
10.1261/rna.061457.117
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Protein-only ribonuclease P (PRORP) is an enzyme responsible for catalyzing the 5' end maturation of precursor transfer ribonucleic acids (pre-tRNAs) encoded by various cellular compartments in many eukaryotes. PRORPs from plants act as single-subunit enzymes and have been used as a model system for analyzing the function of the metazoan PRORP nuclease subunit, which requires two additional proteins for efficient catalysis. There are currently few molecular details known about the PRORP-pre-tRNA complex. Here, we characterize the determinants of substrate recognition by the single subunit Arabidopsis thaliana PRORP1 and PRORP2 using kinetic and thermodynamic experiments. The salt dependence of binding affinity suggests 4-5 contacts with backbone phosphodiester bonds on substrates, including a single phosphodiester contact with the pre-tRNA 5' leader, consistent with prior reports of short leader requirements. PRORPs contain an N-terminal pentatricopeptide repeat (PPR) domain, truncation of which results in a > 30-fold decrease in substrate affinity. While most PPR-containing proteins have been implicated in single-stranded sequence-specific RNA recognition, we find that the PPR motifs of PRORPs recognize pre-tRNA substrates differently. Notably, the PPR domain residues most important for substrate binding in PRORPs do not correspond to positions involved in base recognition in other PPR proteins. Several of these residues are highly conserved in PRORPs from algae, plants, and metazoans, suggesting a conserved strategy for substrate recognition by the PRORP PPR domain. Furthermore, there is no evidence for sequence-specific interactions. This work clarifies molecular determinants of PRORP-substrate recognition and provides a new predictive model for the PRORP-substrate complex.
引用
收藏
页码:1860 / 1873
页数:14
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